Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column

The goal of this work is to study the influence of coccolithophore blooms on the underwater light field and albedo of the water column. A coccolithophore is a single-celled alga with spherical cells surrounded by disk-shaped calcite plates (coccolites), which produce strong light scattering. Because...

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Main Authors: Oleg Kopelevich, Sergey Sheberstov, Svetlana Vazyulya
Format: Article
Language:English
Published: MDPI AG 2020-06-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/8/6/456
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spelling doaj-5ad3cfc6e92b4a4d99289e7e2f8dfa462021-04-02T14:34:54ZengMDPI AGJournal of Marine Science and Engineering2077-13122020-06-01845645610.3390/jmse8060456Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water ColumnOleg Kopelevich0Sergey Sheberstov1Svetlana Vazyulya2P. P. Shirshov Institute of Oceanology of the Russian Academy of Sciences (SIO RAS), 117997 Moscow, RussiaP. P. Shirshov Institute of Oceanology of the Russian Academy of Sciences (SIO RAS), 117997 Moscow, RussiaP. P. Shirshov Institute of Oceanology of the Russian Academy of Sciences (SIO RAS), 117997 Moscow, RussiaThe goal of this work is to study the influence of coccolithophore blooms on the underwater light field and albedo of the water column. A coccolithophore is a single-celled alga with spherical cells surrounded by disk-shaped calcite plates (coccolites), which produce strong light scattering. Because of that, we can observe coccolithophore blooms on satellite ocean color images. We calculated the angular underwater radiance distributions and their integral parameters by the exact numerical method with the input parameters, corresponding to real conditions observed in the Barents Sea and Black Sea. Using the results of the exact calculations, we estimated, for various situations, the accuracy of the approximating formulas applied to the assessment of the water radiance reflectance and the diffuse attenuation coefficients and we make recommendations for their application. As a finding of practical importance, we can note the estimate of the accuracy of the widely used Gordon’s formula for the diffuse attenuation coefficient; this formula results in large errors under strong coccolithophore blooms. We also mention the interesting and important results concerning the features of the asymptotic regime under such conditions.https://www.mdpi.com/2077-1312/8/6/456underwater light fieldscoccolithophore bloomsnumerical modelingparametersasymptotic regime
collection DOAJ
language English
format Article
sources DOAJ
author Oleg Kopelevich
Sergey Sheberstov
Svetlana Vazyulya
spellingShingle Oleg Kopelevich
Sergey Sheberstov
Svetlana Vazyulya
Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
Journal of Marine Science and Engineering
underwater light fields
coccolithophore blooms
numerical modeling
parameters
asymptotic regime
author_facet Oleg Kopelevich
Sergey Sheberstov
Svetlana Vazyulya
author_sort Oleg Kopelevich
title Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
title_short Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
title_full Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
title_fullStr Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
title_full_unstemmed Effect of a Coccolithophore Bloom on the Underwater Light Field and the Albedo of the Water Column
title_sort effect of a coccolithophore bloom on the underwater light field and the albedo of the water column
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2020-06-01
description The goal of this work is to study the influence of coccolithophore blooms on the underwater light field and albedo of the water column. A coccolithophore is a single-celled alga with spherical cells surrounded by disk-shaped calcite plates (coccolites), which produce strong light scattering. Because of that, we can observe coccolithophore blooms on satellite ocean color images. We calculated the angular underwater radiance distributions and their integral parameters by the exact numerical method with the input parameters, corresponding to real conditions observed in the Barents Sea and Black Sea. Using the results of the exact calculations, we estimated, for various situations, the accuracy of the approximating formulas applied to the assessment of the water radiance reflectance and the diffuse attenuation coefficients and we make recommendations for their application. As a finding of practical importance, we can note the estimate of the accuracy of the widely used Gordon’s formula for the diffuse attenuation coefficient; this formula results in large errors under strong coccolithophore blooms. We also mention the interesting and important results concerning the features of the asymptotic regime under such conditions.
topic underwater light fields
coccolithophore blooms
numerical modeling
parameters
asymptotic regime
url https://www.mdpi.com/2077-1312/8/6/456
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AT sergeysheberstov effectofacoccolithophorebloomontheunderwaterlightfieldandthealbedoofthewatercolumn
AT svetlanavazyulya effectofacoccolithophorebloomontheunderwaterlightfieldandthealbedoofthewatercolumn
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